Solar Power Emerges as Key Route to Electricity for More Than 70 Million Nigerians
By Iroyin Yoruba Television News Desk
More than 70 million Nigerians who currently lack access to electricity could increasingly depend on distributed solar power as Nigeria expands efforts to close its electricity-access gap, with energy stakeholders describing decentralised renewable energy as one of the fastest ways to reach communities that remain underserved by the national grid.
The latest development has placed distributed solar at the centre of renewed discussions about Nigeria's electricity future, particularly as the country works toward expanding access through the Federal Government's renewable-energy programmes and the broader Mission 300 initiative.
According to Dayo Olowoniyi, Technical Lead for Mission 300 in Nigeria, the country recorded more than five million new off-grid connections between 2025 and 2026.
He said distributed solar was among the fastest options available for extending electricity to communities that remain outside adequate grid coverage.
The statement was made during a renewable-energy product launch in Lagos, where stakeholders discussed the role of decentralised solar systems in improving electricity access for households, businesses and other users.
The development comes against the background of Nigeria's continuing electricity-access challenge.
Although Nigeria has one of Africa's largest economies and populations, millions of residents continue to experience either no electricity connection or unreliable power supply.
For many households and businesses, the lack of dependable electricity has meant continued reliance on petrol or diesel generators, rechargeable batteries and other alternative sources.
Distributed renewable energy offers another approach.
Instead of waiting for a national grid extension to reach every community, solar home systems and mini-grids can be deployed closer to consumers.
This makes it possible to supply electricity to communities that may be too remote, geographically dispersed or commercially difficult to connect through conventional grid infrastructure.
The development is therefore becoming an important part of Nigeria's strategy to expand electricity access.
More than five million off-grid connections recorded
The five-million-plus new off-grid connections recorded between 2025 and 2026 represent an important development in Nigeria's energy-access campaign.
The figure indicates that solar and other decentralised systems are moving beyond small demonstration projects and becoming a larger component of the country's electricity landscape.
Off-grid connections can take different forms.
Some households may use individual solar home systems.
Other communities can receive electricity through solar-powered mini-grids serving several homes and businesses.
Larger distributed systems can also supply schools, healthcare centres, markets and other public facilities.
The common feature is that electricity can be supplied without requiring every consumer to wait for a conventional grid connection.
That flexibility is particularly important in rural and underserved communities.
A community located far from existing transmission or distribution infrastructure can potentially receive a solar mini-grid much faster than it could receive a conventional grid extension.
This does not mean that the national grid is becoming unnecessary.
Rather, distributed solar can complement grid expansion by reaching areas where decentralised solutions may be more practical.
The Federal Government's DARES programme is designed around this broader approach.
What is DARES?
The Distributed Access through Renewable Energy Scale-Up, known as DARES, is one of Nigeria's major programmes for expanding electricity access through renewable energy.
The programme is implemented through the Rural Electrification Agency and forms part of Nigeria's broader commitments under Mission 300.
The World Bank describes DARES as a flagship Nigerian programme intended to expand access through distributed renewable energy.
The programme is expected to provide clean electricity to approximately 17.5 million Nigerians and help replace more than 250,000 polluting and expensive diesel generators.
This is significant because the programme is not focused solely on installing solar panels.
It is also designed to address the economic and environmental costs associated with Nigeria's dependence on generators.
Millions of Nigerian households and businesses use generators when grid electricity is unavailable.
Generators provide immediate power, but they require continuous purchases of petrol or diesel and regular maintenance.
They also produce emissions and noise.
Replacing some of those generators with solar-powered systems could reduce operating costs for consumers while also reducing pollution.
Why distributed solar is important
Traditional electricity infrastructure requires substantial investment.
Large power plants must generate electricity.
Transmission networks must move electricity over long distances.
Distribution companies must deliver it to individual consumers.
Each stage requires infrastructure, financing and maintenance.
In areas with large populations and established economic activity, extending the grid can be commercially attractive.
But the calculation becomes different in remote communities.
A village with scattered homes may require expensive infrastructure to connect to a distant distribution network.
A solar mini-grid, by contrast, can be installed locally.
Solar panels generate electricity from sunlight.
Batteries can store energy for use when sunlight is unavailable.
A local distribution network can then deliver the electricity to households and businesses within the community.
This decentralised model can shorten the distance between electricity generation and consumption.
It can also allow communities to receive power without waiting for major national infrastructure projects.
The reality of the electricity-access gap
Nigeria's electricity-access challenge is not simply about whether a power line passes through a community.
Access must also be meaningful.
A household may have a connection but still experience long outages.
A business may have electricity available only for a few hours.
A health centre may have to depend on a generator to operate essential equipment.
A school may have electricity during some periods but lack dependable power for computers and digital learning.
This distinction between connection and reliability is important.
Expanding electricity access therefore requires both more connections and better service.
Distributed solar can help address both issues in locations where the grid is weak or absent.
A well-designed mini-grid can provide a predictable local supply.
Solar home systems can provide individual households with basic electricity for lighting, phone charging and small appliances.
Larger systems can support productive activities.
Electricity and small businesses
One of the biggest potential beneficiaries of distributed solar is the small-business sector.
Nigeria has millions of small businesses operating in markets, shops, workshops, farms and homes.
Many depend on electricity to operate.
Barbers need power for clippers.
Tailors use sewing machines.
Welders require electricity for equipment.
Food vendors may need refrigerators or freezers.
Phone-repair businesses require electricity for tools.
Farmers may need power for irrigation, processing or cold storage.
Small shops require lighting and refrigeration.
When electricity is unreliable, businesses often turn to generators.
The cost of fuel can then become a major operating expense.
Solar power can potentially reduce those costs, particularly when a system is properly designed and maintained.
For businesses, the benefit is not simply having light.
It is having predictable energy that can support productive activity.
Solar power and rural economic development
Electricity can transform the economic life of a rural community.
A shop can remain open after sunset.
A farmer can process agricultural products locally.
A cold-storage facility can preserve food.
A small workshop can operate machinery.
A school can provide evening study opportunities.
A clinic can maintain basic equipment.
A communications centre can provide internet access.
These activities can create additional income.
This is why electricity access is increasingly discussed as an economic-development issue rather than simply an infrastructure issue.
Power enables other sectors.
Agriculture, education, healthcare, telecommunications, commerce and manufacturing all depend to some extent on reliable electricity.
The World Bank describes electricity as a foundation for jobs, education, healthcare and economic opportunity under the Mission 300 initiative.
Solar and healthcare
Healthcare facilities are particularly sensitive to electricity shortages.
A health centre may need power for lighting, refrigeration, communications, medical equipment and emergency procedures.
The absence of reliable electricity can therefore create serious operational difficulties.
Distributed solar can provide an alternative source of power for facilities that are not adequately served by the national grid.
The World Bank has highlighted Nigerian healthcare facilities that have benefited from distributed renewable-energy solutions.
In one example cited in the bank's Mission 300 material, a health facility that had struggled with unreliable electricity gained access to cleaner and more dependable power through distributed renewable energy.
Such applications demonstrate why the electricity-access discussion extends beyond household convenience.
Reliable electricity can affect the ability of healthcare workers to perform their jobs.
Solar and education
Schools are another potential beneficiary.
Modern education increasingly depends on electricity.
Computers need power.
Internet routers need power.
Projectors need power.
Digital learning devices need charging.
Teachers and students increasingly use online educational materials.
Without electricity, these technologies become difficult to use consistently.
Solar systems can therefore provide schools in underserved communities with a more reliable source of energy.
Even relatively small systems can power lighting, computers, internet equipment and charging points.
In communities without reliable grid electricity, such systems can change how students study.
Children can read after sunset without relying solely on kerosene lamps or other alternatives.
Teachers can use digital resources.
Schools can potentially introduce computer-based learning.
These benefits can extend beyond the school itself.
A community school with a reliable electricity supply can sometimes serve as a local digital access point.
Solar and digital connectivity
Electricity and telecommunications are increasingly connected.
A mobile phone needs charging.
A router needs power.
A telecommunications tower requires electricity.
A computer requires electricity.
A business using online services needs electricity to maintain its digital operations.
This means that electricity shortages can indirectly restrict digital inclusion.
The growth of distributed solar could therefore support Nigeria's broader digital economy.
Communities with reliable local electricity are better positioned to use mobile internet, digital financial services, online education and other technology-based services.
This creates another reason why electricity access is becoming a strategic development priority.
Mission 300 and Nigeria
The Nigerian effort forms part of the larger Mission 300 initiative led by the World Bank Group and African Development Bank.
The initiative aims to connect 300 million people across Africa to electricity by 2030.
By June 2026, the World Bank and African Development Bank said Mission 300 had already connected more than 50 million people across 40 countries, with the pace of electrification nearly twice the level recorded when the initiative began.
Nigeria is one of the first group of countries participating in the initiative.
Its National Energy Compact sets out reforms and investment priorities intended to accelerate electricity access.
The Mission 300 framework places distributed renewable energy alongside grid expansion, regional power integration, private investment and improvements in utility performance.
This is important because Nigeria's electricity challenge is too large for one technology or one institution to solve.
The national grid will remain important.
Large-scale generation will remain important.
Transmission infrastructure will remain important.
But decentralised renewable energy can fill some of the gaps.
Five pillars of Mission 300
Mission 300 is built around five broad areas.
The first is expanding cost-efficient power generation and infrastructure.
The second involves strengthening regional electricity integration.
The third focuses on distributed renewable energy and last-mile connections.
The fourth is designed to attract private-sector investment.
The fifth focuses on making utilities more financially viable.
These pillars reflect an understanding that electricity access requires more than building generating plants.
The system must also be able to deliver electricity to consumers.
Nigeria's DARES programme fits particularly closely with the distributed-energy component.
The approach allows renewable systems to be deployed where conventional grid expansion may take longer or cost more.
Private investment will be important
The scale of Nigeria's electricity-access challenge means public funding alone is unlikely to be sufficient.
Private companies will need to play a major role in financing, installing and operating distributed energy systems.
Mission 300 has therefore placed significant emphasis on attracting private investment.
In March 2026, the World Bank, African Development Bank and Rockefeller Foundation launched a Mission 300 Private Sector Council intended to help mobilise private investment for electricity access and job creation across Africa.
The initiative is designed to bring business expertise into efforts to scale electricity connections and attract capital.
For Nigeria, this matters because distributed solar is ultimately an industry.
Companies need financing to purchase equipment.
They need customers who can pay for electricity.
They need regulatory certainty.
They need access to foreign exchange and supply chains.
They also need predictable rules for mini-grid operations and other distributed-energy businesses.
The affordability challenge
One of the biggest questions is whether solar electricity will be affordable to the people who need it most.
Many households without reliable electricity are also among the lowest-income consumers.
A solar system may reduce long-term energy costs, but the initial cost of equipment can still be difficult for low-income households.
This is where government subsidies and development financing become important.
According to the Mission 300 technical lead quoted in the latest Nigerian discussion, the Federal Government's DARES programme provides capital subsidies to renewable-energy companies to help reduce the cost of solar solutions for Nigerians.
The idea is to make systems more affordable while creating a market that private companies can sustain.
This is an important balance.
If subsidies are too low, poor households may not be able to afford systems.
If subsidies are structured poorly, they can distort the market or create dependency.
A successful programme must therefore combine public support with commercially sustainable operations.
The role of local manufacturing
Another potential benefit of expanding solar deployment is the development of local manufacturing and assembly.
Nigeria has historically imported a significant amount of energy equipment.
Large-scale solar deployment creates an opportunity to build domestic capacity for assembling and eventually manufacturing components.
The Federal Government's earlier solar strategy identified local content as an important part of the off-grid value chain.
Government documents associated with Nigeria's solar programme have targeted millions of new solar connections while also seeking to encourage manufacturers and assemblers to establish facilities in Nigeria.
Local production could potentially create jobs and reduce dependence on imported equipment.
It could also make it easier to maintain systems because some components and technical expertise would be available locally.
Solar can create jobs
The expansion of distributed renewable energy can create employment in several areas.
Solar installers are needed to install systems.
Technicians are required for maintenance.
Engineers design and supervise projects.
Sales representatives connect companies with customers.
Manufacturers and assemblers employ workers.
Companies need accountants, customer-service personnel and logistics staff.
Training institutions can develop specialised courses.
This means the electricity-access programme can become an employment programme as well.
The World Bank and African Development Bank have repeatedly linked Mission 300 to job creation and economic opportunity.
For Nigeria's large youth population, the renewable-energy sector could therefore become an important source of technical and commercial employment.
Training will be necessary
Installing solar equipment safely requires technical knowledge.
Poorly installed systems can fail prematurely or create safety risks.
As deployment expands, Nigeria will need enough trained technicians to install and maintain systems.
This creates an opportunity for vocational institutions and technical colleges.
Young Nigerians can be trained in solar installation, battery management, electrical wiring, system design and maintenance.
Such training can create employment while also ensuring that the expanding solar market has the skilled workforce it needs.
The development of local technical capacity is particularly important if Nigeria wants to move beyond importing equipment toward building a domestic renewable-energy industry.
Battery storage is critical
Solar electricity has an obvious limitation.
The sun does not shine continuously.
Solar systems therefore often require batteries to store electricity for use at night or during periods of low sunlight.
Battery technology is consequently a major part of distributed solar.
The cost, lifespan and quality of batteries can significantly affect the overall economics of a solar system.
Poor-quality batteries can fail early and increase costs for consumers.
High-quality batteries can improve reliability but may increase the initial cost.
Nigeria's renewable-energy expansion will therefore require attention not only to solar panels but also to storage technology.
Maintenance cannot be ignored
Installing a solar system is not the end of the process.
Panels need cleaning.
Batteries need monitoring.
Electrical connections need inspection.
Inverters and other components can fail.
Mini-grid infrastructure needs maintenance.
A sustainable electricity-access programme must therefore provide mechanisms for long-term servicing.
This is one reason why private-sector participation matters.
Companies operating distributed systems have an incentive to maintain equipment when their revenue depends on providing reliable electricity to customers.
However, strong consumer protection and regulatory oversight are also needed.
The environmental benefit
Replacing diesel and petrol generators with solar can provide environmental benefits.
Generators produce greenhouse-gas emissions and local air pollution.
They also contribute to noise pollution, particularly in densely populated areas.
A solar system produces electricity without burning fuel during operation.
The environmental advantage is therefore significant when solar replaces fossil-fuel generation.
The benefits extend beyond climate policy.
Cleaner local air can improve living conditions.
Reduced generator noise can improve the environment around homes, schools and businesses.
Lower fuel consumption can also reduce the amount of money households and businesses spend on generators.
Solar does not eliminate every problem
It is important, however, not to present solar power as a perfect solution.
Solar systems have costs.
Panels, batteries, inverters and other components require investment.
Equipment eventually needs replacement.
Battery disposal and recycling must also be managed responsibly.
Large-scale solar deployment requires land in some cases.
Mini-grid operators need viable business models.
Consumers need to be able to pay for electricity.
Regulation must be clear.
These challenges do not undermine the case for solar.
They simply show that successful deployment requires planning.
Mini-grids and community development
Solar mini-grids may be particularly important for communities that lack access to the national grid.
A mini-grid can create a local electricity network around a central generation system.
It can supply multiple households and businesses.
When properly designed, it can support productive uses such as milling, refrigeration, welding, irrigation and small manufacturing.
This can produce an economic multiplier effect.
Instead of electricity being used only for lighting, it can support income-generating activities.
A farmer can process crops.
A business can extend operating hours.
A food seller can refrigerate products.
A workshop can use machinery.
These activities can increase local economic activity.
Lessons from communities already using solar
Reports from rural communities in states such as Nasarawa show how solar-powered mini-grids are being used to provide electricity for homes, businesses and public facilities.
In communities where residents previously depended heavily on generators or lived with limited electricity, solar systems have changed daily routines.
Residents have reported being able to keep shops open later and provide children with better lighting for studying.
Such experiences illustrate the potential of decentralised electricity.
They also show why community participation matters.
Residents need to understand the system.
Operators need to understand local demand.
Payment structures must reflect local economic conditions.
Maintenance arrangements need to be clear.
A successful mini-grid is therefore not simply an engineering project.
It is also a community and business project.
Reaching the remaining 70 million
The figure of more than 70 million Nigerians without electricity demonstrates the scale of the remaining challenge.
Even if millions of new connections are added, the country still needs to connect a very large number of people.
This means the pace of deployment must increase.
The World Bank says Nigeria's DARES programme is expected to deliver clean energy to 17.5 million Nigerians.
That would represent a significant contribution but would still leave additional people needing access.
The solution will therefore require multiple approaches.
Grid expansion will remain necessary.
Distributed solar will remain important.
Mini-grids will have a role.
Solar home systems will have a role.
Energy-efficiency improvements will matter.
Better utility performance will also matter.
Electricity access and Nigeria's economy
The economic implications of solving the electricity problem are enormous.
Reliable electricity can reduce production costs.
It can improve business productivity.
It can attract investment.
It can support industrialisation.
It can strengthen digital services.
It can improve healthcare.
It can support education.
It can reduce household dependence on fuel generators.
The electricity sector therefore has implications for almost every part of the Nigerian economy.
This is why Mission 300 is not simply an energy initiative.
It is also an economic-development initiative.
The generator economy
Nigeria's dependence on generators has created an entire economic ecosystem.
Fuel sellers, generator repairers, spare-parts dealers and equipment suppliers all participate in the market.
Households and businesses spend significant amounts on fuel and maintenance.
The challenge is not simply that generators are noisy or polluting.
They can also be expensive to operate.
For a small business, daily fuel costs can reduce profits.
For a household, generator fuel can consume money that could otherwise be spent on food, education or savings.
Replacing some generator use with solar can therefore have direct financial benefits.
The transition will not happen overnight.
Generators will likely remain important during the transition.
But as solar systems become more affordable and reliable, some consumers may reduce their dependence on fossil-fuel generators.
Solar and energy security
Distributed energy can also strengthen energy resilience.
A community that depends entirely on one central electricity system is vulnerable when the system fails.
Local generation can provide another layer of resilience.
If a national grid line fails, a properly designed mini-grid may continue operating.
For critical facilities such as health centres, local solar systems can provide backup power.
This makes distributed energy relevant not only to communities without electricity but also to communities that experience frequent outages.
Nigeria's renewable-energy opportunity
Nigeria has significant solar potential because of its geographic location.
The country receives substantial sunlight throughout the year, although solar intensity varies by region and season.
The challenge is turning that natural resource into affordable electricity.
That requires investment, technology, storage, distribution networks and supportive policy.
The growth of off-grid connections suggests that this market is beginning to develop.
Private companies are entering the sector.
Government programmes are providing support.
Development partners are providing financing and technical assistance.
Consumers are increasingly familiar with solar products.
Together, these developments could accelerate the expansion of renewable energy.
The importance of regulation
A growing solar market needs effective regulation.
Consumers need protection from poor-quality equipment and misleading claims.
Mini-grid operators need clear rules.
Investors need predictable policies.
Technical standards need to be enforced.
Government subsidies need transparency.
These measures can build confidence in the industry.
The Nigerian Energy Compact under Mission 300 specifically recognises the need for policy and regulatory frameworks, including minimum quality and technical standards for mini-grids and solar home systems.
This is important because rapid growth without quality control can create long-term problems.
Consumers who purchase poor-quality systems and experience repeated failures may lose confidence in solar technology.
Strong standards can help prevent that.
The role of financial institutions
Banks and other financial institutions can also play a major role.
Many households and businesses cannot afford to pay the full cost of a solar system upfront.
Financing models can allow consumers to pay over time.
Companies can use asset-financing arrangements.
Businesses can access loans to install solar systems.
Development finance institutions can provide guarantees or concessional financing.
Mission 300's broader strategy includes efforts to mobilise private capital and reduce investment risks in distributed renewable energy.
The availability of suitable financing could therefore determine how quickly solar deployment expands.
The challenge of affordability
Even with financing, affordability remains important.
Nigeria's low-income households may struggle to commit to monthly payments if their incomes are unstable.
Solar companies therefore need pricing models that reflect customers' ability to pay.
Pay-as-you-go systems can spread costs over time.
Community-based financing can also help.
Government subsidies can reduce initial costs.
The right model may differ between urban and rural consumers.
A farmer's income pattern is different from that of a salaried worker.
A market trader's cash flow is different from that of a factory.
Flexible financing will therefore be important.
From electricity access to productive power
The next stage of Nigeria's energy-access strategy should not focus only on the number of connections.
It should also consider how those connections are used.
A household connection provides basic welfare.
A productive-use connection can generate income.
If electricity enables a business to increase production, the economic benefit can extend beyond the individual consumer.
This is why mini-grids and solar systems should increasingly be designed around productive activities.
Agricultural processing is one example.
Cold storage is another.
Water pumping and irrigation are also important.
Digital businesses can benefit.
Small manufacturing can benefit.
These uses can help communities generate income that makes the electricity system more economically sustainable.
Mission 300's larger ambition
Mission 300 aims to connect 300 million Africans to electricity by 2030.
That target is ambitious.
But progress recorded during 2026 shows that large-scale acceleration is possible.
The World Bank and African Development Bank reported that more than 50 million people had already gained access under the initiative by June.
The organisations said the pace of new connections had nearly doubled compared with the period before Mission 300 began.
Nigeria's performance will therefore contribute to a much larger continental effort.
The country's large population means that progress in Nigeria can have a significant effect on the overall African target.
Why Nigeria matters to Mission 300
Nigeria is one of Africa's most populous countries and has one of the continent's largest economies.
Its electricity-access problem is therefore particularly important.
If Nigeria can rapidly expand reliable electricity, the impact could extend across economic sectors.
More electricity could support businesses, digital services, manufacturing and agricultural processing.
It could also reduce dependence on generators.
The success of Nigeria's DARES programme could therefore provide lessons for other African countries facing similar electricity-access challenges.
The World Bank has described the Nigerian programme as a model that can contribute to scaling distributed renewable energy.
What success will look like
Success should ultimately be measured by what happens in people's daily lives.
A household should have dependable lighting.
A student should be able to study.
A clinic should be able to operate.
A business should be able to work without spending an excessive share of its income on fuel.
A farmer should be able to process and preserve produce.
A community should be able to access digital services.
These outcomes matter more than the number of solar panels installed.
The number of connections is important because it provides a measurable indicator.
But the real goal is meaningful electricity access.
The road ahead
Nigeria still has a long way to go.
The reported five million-plus new off-grid connections are encouraging, but more than 70 million people remain without electricity according to the latest Mission 300 discussion.
The gap is therefore still enormous.
The government will need to maintain momentum.
Private companies will need to continue investing.
Development partners will need to provide financing and technical assistance.
Regulators will need to maintain standards.
Communities will need to participate.
And consumers will need access to affordable financing.
No single organisation can close the gap alone.
Final perspective
The latest push for distributed solar power highlights a major shift in the way Nigeria is approaching its electricity challenge.
For decades, the national conversation focused heavily on increasing generation and improving the conventional grid.
Those priorities remain important.
But Nigeria's electricity-access gap is too large and geographically complex to be solved through grid expansion alone.
Distributed solar offers another route.
Solar home systems can provide electricity directly to households.
Mini-grids can serve communities.
Solar systems can support schools and health centres.
Businesses can use renewable power to reduce dependence on generators.
Farmers can use electricity for processing, irrigation and storage.
Digital businesses can operate with greater reliability.
The reported five million-plus new off-grid connections between 2025 and 2026 show that this model is already expanding.
The Federal Government's DARES programme provides an important framework for accelerating that expansion, with the World Bank expecting the programme to bring clean electricity to approximately 17.5 million Nigerians and replace more than 250,000 diesel generators.
The wider Mission 300 initiative adds another layer of support, bringing together governments, development banks, private companies and other partners around the goal of connecting 300 million Africans to electricity by 2030.
For Nigeria, the immediate challenge is turning these commitments into dependable electricity for households and businesses.
The country will need to ensure that solar systems are affordable, reliable and properly maintained.
It will need to train technicians, encourage local manufacturing and create financing mechanisms that allow low-income consumers to participate.
It will also need to ensure that the growth of renewable energy is supported by strong regulation and consumer protection.
The opportunity, however, is considerable.
Every new electricity connection can potentially support more than lighting.
It can support education.
It can support healthcare.
It can support communication.
It can support businesses.
It can support jobs.
It can help reduce generator dependence.
And it can strengthen the economic resilience of communities that have historically been left behind by conventional electricity infrastructure.
Nigeria's electricity challenge remains enormous, but the expansion of distributed solar provides a practical additional pathway.
With more than 70 million people still needing electricity access and millions of new off-grid connections already recorded, the coming years will determine whether Nigeria can transform solar power from a growing alternative into one of the central pillars of nationwide electricity access.
The opportunity is not simply to put solar panels on roofs.
It is to create an electricity system capable of reaching communities wherever they are, powering businesses wherever they operate and giving millions of Nigerians the energy they need to participate fully in the country's economic and digital future.
Iroyin Yoruba Television will continue to follow Nigeria's electricity-access programmes, renewable-energy investments and developments under Mission 300 and DARES.
